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Correlating Thermionic Emission with Specific Surface Reconstructions in a <100> Hydrogenated Single-Crystal Diamond

Articolo
Data di Pubblicazione:
2020
Abstract:
Thermionic emission relies on the low work function and negative electron affinity of the, often functionalized, surface of the emitting material. However, there is little understanding of the interplay between thermionic emission and temperature-driven dynamic surface transformation processes as these are not represented on the traditional Richardson-Dushman equation for thermionic emission. Here, we show a new model for thermionic emission that can reproduce the effect of dynamic surface changes on the electron emission and correlate the components of the thermionic emission with specific surface reconstruction phases on the surface of the emitter. We use hydrogenated <100> single-crystal and polycrystalline diamonds as thermionic emitters to validate our model, which shows excellent agreement with the experimental data and could be applicable to other emitting materials. Furthermore, we find that tailoring the coverage of specific structures of the C(100)-(2 × 1):H surface reconstruction could increase the thermionic emission of diamond by several orders of magnitude.
Tipologia CRIS:
01.01 - Articolo in rivista
Keywords:
diamond; emission; hydrogen; surface; thermionic
Elenco autori:
Dominguez-Andrade, H.; Anaya, J.; Croot, A.; Cattelan, M.; Twitchen, D. J.; Kuball, M.; Fox, N. A.; Fox, N. A.
Autori di Ateneo:
CATTELAN MATTIA
Link alla scheda completa:
https://www.research.unipd.it/handle/11577/3440538
Pubblicato in:
ACS APPLIED MATERIALS & INTERFACES
Journal
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